The advent of the Internet of Things and the growing interest in continuous monitoring by wearables have created a need for conformable and stretchable displays. Electrochromic displays (ECDs) are receiving attention as a cost-effective solution for many simple applications. However, stretchable ECDs have yet to be produced in a robust, large scale and cost-efficient manner. Here we develop a process for making fully screen printed stretchable ECDs. By evaluating commercially available inks with respect to electromechanical properties, including electrochromic PEDOT:PSS inks, our process can be directly applied in the manufacturing of stretchable organic electronic devices. The manufactured ECDs retained colour contrast with useful switchin...
Electronics is already controlling a large number of everyday items. Due to that, electr...
Stretchable electroluminescent (EL) devices are a new form of mechanically deformable electronics th...
We present an electrochromic device (ECD) fabricated using PEDOT:PSS and graphene as active conducti...
The advent of the Internet of Things and the growing interest in continuous monitoring by wearables ...
In soft electronics technology, stretchable displays move away from conventional rigid devices to ad...
In soft electronics technology, stretchable displays move away from conventional rigid devices to ad...
Stretchable organic electrochemical transistors (OECTs) are promising for wearable applications with...
Electrochromic (EC) technology has progressed tremendously in recent years. Rigid EC devices have ad...
Stretchable and wearable WO<sub>3</sub> electrochromic devices on silver nanowire (AgNW) elastic con...
A stretchable electrochromic display with a self-powered feature is an attractive concept in address...
Recent advances in materials science research have enabled the production of highly stretchable dev...
Electrochromic materials have been considered as a new way to achieve energy savings in the building...
In this study, electrochemical responses of inkjet-printed multicolored electrochromic devices (ECD)...
Stretchable electroluminescent (EL) devices are a new form of mechanically deformable electronics th...
For the first time, the design, fabrication and testing of a dispenser-printed electrochromic (EC) d...
Electronics is already controlling a large number of everyday items. Due to that, electr...
Stretchable electroluminescent (EL) devices are a new form of mechanically deformable electronics th...
We present an electrochromic device (ECD) fabricated using PEDOT:PSS and graphene as active conducti...
The advent of the Internet of Things and the growing interest in continuous monitoring by wearables ...
In soft electronics technology, stretchable displays move away from conventional rigid devices to ad...
In soft electronics technology, stretchable displays move away from conventional rigid devices to ad...
Stretchable organic electrochemical transistors (OECTs) are promising for wearable applications with...
Electrochromic (EC) technology has progressed tremendously in recent years. Rigid EC devices have ad...
Stretchable and wearable WO<sub>3</sub> electrochromic devices on silver nanowire (AgNW) elastic con...
A stretchable electrochromic display with a self-powered feature is an attractive concept in address...
Recent advances in materials science research have enabled the production of highly stretchable dev...
Electrochromic materials have been considered as a new way to achieve energy savings in the building...
In this study, electrochemical responses of inkjet-printed multicolored electrochromic devices (ECD)...
Stretchable electroluminescent (EL) devices are a new form of mechanically deformable electronics th...
For the first time, the design, fabrication and testing of a dispenser-printed electrochromic (EC) d...
Electronics is already controlling a large number of everyday items. Due to that, electr...
Stretchable electroluminescent (EL) devices are a new form of mechanically deformable electronics th...
We present an electrochromic device (ECD) fabricated using PEDOT:PSS and graphene as active conducti...